Twin Photobeam Detectors Manual

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Also available from SECO-LARM: Twin Photobeam Sensors Quad Photobeam Detectors Curtain / Barrier Sensors Twin Photobeam Detectors Manual Up to 390ft (0m) range Laser-beam alignment Anti-frost system Adjustable response time Reflective Photobeam Sensor 4 Models available - up to 660ft (200m) range ~24 VAC/VDC Laser-beam alignment Hooded Reflective Photobeam Sensor 2, 4, 6, 8 or 10 Beams available (10 Beams - curtain sensor only) Curtain sensor - Up to 50ft (15m) Barrier sensor - Up to 393ft (0m) Adjustable interruption time Flush-Mount Photobeam Sensors Available with 45ft (14m) or 35ft (11m) range Mounting hardware included Reflector included UL325-2016 compliant Available with 50ft (15m) or 33ft (10m) range Polarized version available Round reflector included UL325-2016 compliant Available with reflective beam and 16ft (5m) range or through-beam and 33ft (10m) range Adjustable alignment angle Mounts to a single-gang box WARRANTY: This SECO-LARM product is warranted against defects in material and workmanship while used in normal service for a period of one (1) year from the date of sale to the original consumer customer. SECO-LARM s obligation is limited to the repair or replacement of any defective part if the unit is returned, transportation prepaid, to SECO-LARM. This Warranty is void if damage is caused by or attributed to acts of God, physical or electrical misuse or abuse, neglect, repair, or alteration, improper or abnormal usage, or faulty installation, or if for any other reason SECO-LARM determines that such equipment is not operating properly as a result of causes other than defects in material and workmanship. The sole obligation of SECO-LARM, and the purchaser s exclusive remedy, shall be limited to replacement or repair only, at SECO-LARM s option. In no event shall SECO-LARM be liable for any special, collateral, incidental, or consequential personal or property damages of any kind to the purchaser or anyone else. NOTICE: The information and specifications printed in this manual are current at the time of publication. However, the SECO-LARM policy is one of continual development and improvement. For this reason, SECO-LARM reserves the right to change specifications without notice. SECO-LARM is also not responsible for misprints or typographical errors. Copyright 2016 SECO-LARM U.S.A., Inc. All rights reserved. This material may not be reproduced or copied, in whole or in part, without the written permission of SECO-LARM. SECO-LARM U.S.A., Inc. 16842 Millikan Avenue, Irvine, CA 92606 Tel: 800-662-0800 / 949-261-2999 Fax: 949-261-7326 PITSW3 file:mi_e96x-dxxxgq_160218.pmd Website: www.seco-larm.com E-mail: sales@seco-larm.com Model # Outdoor Range Indoor Range E-960-D90GQ 90 ft. (30m) 190 ft. (60m) E-960-D190GQ* 190 ft. (60m) 390 ft. (0m) E-960-D290GQ* 290 ft. (90m) 590 ft. (180m) E-964-D390GQ* 390 ft. (0m) 790 ft. (240m) Note: All above models are also available as non-etl compliant versions. * Special order only (E-964-D390Q is a multi- version). SECO-LARM

TABLE OF CTENTS Important... 2 Choosing a Location... 3 Typical Installations... 4 Running the Cable... 4 Wiring the Wall Mount... 4 Wiring the Pole Mount... 5 Wiring... 5 Examples of Ways To Connect Sensors... 6 Beam Frequency Selection Chart... 7 (E-964-D390GQ Model Only) Multiple Sensors Sample Applications... 7-8 Adjusting the Alignment... 9 Testing the Unit... 10 Specifications... 10 Dimensions... 11 Troubleshooting... 11 Fig. 11: Dimensions Top View 43ST Pole Size 2.8 (72mm) 6.8 (173mm) 2.9 (74mm) Selectable 4-channel Beam Frequency... 7 Side View Front View Rear View Features: Four selectable beam frequencies (For E-964-D390GQ model only). Twin beams provide reliable perimeter security, minimizing false alarms from falling leaves, birds, etc. Lensed optics reinforce beam strength and provide excellent immunity to false alarms due to rain, snow, mist, etc. Weatherproof, sunlight-filtering case for indoor and outdoor use. Non-polarized power inputs. Included: x 1 x 1 Mounting plates x 2 IMPORTANT Do not connect to power until the sensor is completely installed and the installation has been double-checked. 2 Automatically adjusts beam strength to compensate for different weather conditions Automatic input power filtering with special noise rejection circuitry. NC/NO trigger output. N.C. tamper circuit included. Quick, easy installation with builtin laser beam alignment system. Pole mounting brackets (2 sets) Mounting hardware also included. Fig. : Beam Spread The beam spread (s) can be calculated as s=0.03xd. Distance (d) Beam spread (s) 90ft (30m) 2.7 ft (0.8m) 190 ft (60m) 5.7 ft (1.7m) 290 ft (90m) 8.7 ft (2.7m) 390 ft (0m) 11.7 ft (3.6m) Table 6: Troubleshooting Situation LED does not light. LED never lights up when the beam is interrupted. Beams interrupted and LED lights, but no trigger output. Trigger LED continuously lit. Trigger becomes erratic in bad weather. Frequent false triggers from leaves, birds, etc. Possible Problem Incorrectly wired and/or insufficient voltage a. Insufficient voltage b. Beam reflected away from receiver c. Beams not simultaneously interrupted. Trigger cable may be cut, or the relay contact stuck due to overloading. a. Lenses out of alignment. b. Beams are blocked. c. Cover is foggy or dirty. Lenses out of alignment. a. Too sensitive. b. Bad location. 11 distance (d) Solution beam spread (s) Ensure the power supply to the transmitter is to 30V DC/AC, 60Hz. a. Double-check the voltage. b. Clean the cover. c. Check overall installation. Check the continuity of the wiring between the sensor and the alarm. a. Realign the lenses. b. Remove any obstacles. c. Clean the cover. Check overall system installation. If still erratic, realign the lenses. a. Reduce the response time. b. Change the transmitter and/or location.

Testing the Unit 1. Power up the transmitter and receiver. 2. If the yellow or red LED remains steady even when the beam is not interrupted, readjust the alignment. 3. Walk between the transmitter and receiver to interrupt the beams. Walk at various speeds, and adjust the delay time adjustment knob as needed. Table 5: Specifications Model Max. range (outdoor) Max. range (indoor) No. of beam channel Current draw Operating voltage Detection method Interrupt speed Trigger output Tamper output ( & ) Sensor LED (receiver) Signal LED (receiver) Power LED ( & ) Laser wavelength Laser output power Alignment angle Operating temperature Weight Case NOTE The sensor will be triggered only if both the upper and lower beams are simultaneously interrupted. IMPORTANT Test the detector periodically to ensure the alignment settings are suitable for the site. E-960-D90GQ E-960-D190GQ E-960-D290GQ E-964-D390GQ 90 (30m) 190 (60m) 290 (90m) 390 (0m) 190 (60m) 390 (0m) 590 (180m) 790 (240m) N/A N/A N/A 4 50mA max. (laser alignment only) 150mA max. (active operation excluding laser alignment) -30V DC/AC 60Hz, 200mA Simultaneous breaking of 2 beams 10msec SPDT NO/NC/COM relay, 1A@30 VDC/VAC N.C. switch, 1A@30 VDC/VAC Red LED - : When transmitter and receiver are not aligned or when beam is broken Yellow LED - : When receiver's signal is weak or when beam is broken Green LED : Indicates connected to power 650nm 5mW Horizontal: ±90 0, Vertical: ±5 0-13 0 F~+131 0 F (-25 0 C~+55 0 C) 2.5-lb (1.1kg) PC Resin Note: Depending on the monitoring system used by the gate motor, it may be necessary to use either the N.C. output or connect the included 10kΩ resistor to the N.O. or N.C. output. Please refer to the gate operator manual or the gate operator manufacturer for the preferred monitoring method. Fig. 1: Identifying the Sensors Terminals Mounting Plate Signal LED Frequency selection* Alarm LED switch Frequency selection* switch Power LED Choose a Location To prevent erratic operation and/or false alarms: Wind will not directly cause false alarms, but could cause leaves or similar objects to fly or wave into the beams. Therefore, do not mount near trees, bushes, or other leafy vegetation. Do not mount where the transmitter or receiver could be splashed by water or mud. Do not mount where the unit could be suddenly exposed to a bright light, such as a floodlight or a passing automobile s headlight. Do not let sunlight or any direct beam of light enter the sensing spot of the transmitter. If needed, mount so the receiver, not the transmitter, faces the sun. Do not mount where animals could break the beams. Fig. 2: Vertical and Horizontal Adjustments ±5 (10 ) Power LED Voltage output probes * For multi- E-964-D390GQ model only. Vertical adjustment Horizontal adjustment Vertical adjustment screw Vertical adjustment screw Horizontal adjustment Lens View finder Alignment laser Laser / switch Fig. 3:Typical Installations Side Views 32" to 39" Top Views 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 10 ±90 (180 ) 3

Typical Installations The photoelectric beam lens can be adjusted horizontally ±90, and vertically ±5 (see fig. 2). This allows much flexibility in terms of how the transmitter and receiver can be mounted. See fig. 3. Install at a distance of 32 to 39 (80 to 100 cm) above the ground for most situations. See fig. 3. Running the Cable Run a cable from the control unit to the photobeam sensor. If burying the cable is required, make sure to use electrical conduit. Shielded cable is strongly suggested. See Table 1 for maximum cable length. Table 1: Cable Length Model E-960-D90GQ E-960-D190GQ E-960-D290GQ E-964-D390GQ Wire Size V 24V V 24V V 24V V 24V AWG22 320m 2,800m 280m 2,400m 200m 1,600m 110m 0.33mm 2 0.0005in 2 1,050 ft. 18,000 ft. 920 ft. 7,870 ft. 660 ft. 5,250 ft. 390 ft. AWG20 550m 0.52mm 4,800m 450m 4,200m 350m 3,000m 170m 2 0.0008in 1,800 ft. 2 15,750 ft. 1,480 ft. 13,780 ft. 1,150 ft. 9,840 ft. 560 ft. AWG18 800m 7,200m 700m 6,200m 500m 4,200m 250m 0.83mm 2 2,600 ft. 0.0013in 2 23,620 ft. 2,300 ft. 20,340 ft. 1,640 ft. 13,780 ft. 820 ft. AWG17 980m 8,800m 850m 7,600m 590m 5,200m 310m 1.03mm 2 3,190 ft. 28,870 ft. 2,790 ft. 24,930 ft. 1,940 ft. 17,060 ft. 1,020 ft. 0.0016in 2 Note (1): Max. cable length when two or more sets are connected is the value shown in Table 1 divided by the number of sets. Note (2): The power line can be wired to a distance of up to 3,300 ft. (1,000m) with AWG22 (0.33mm 2 ) telephone wire. 900m 2,950 ft. 1,400m 4,590 ft. 2,200m 7,220 ft. 2,600m 8,530 ft. Adjusting the Alignment The transmitter and receiver sensor units can be adjusted ±5º vertically and ±90º horizontally once the unit is mounted and power is connected (see fig. 2 on page 3). There are two ways to adjust alignment: 1. Laser adjustment (see fig. 1 on page 3): a. Remove the transmitter cover, then turn the laser on with the / switch (see fig. 1 on page 3). A red dot will show where the photoelectric beams are aimed. b. Adjust the transmitter's sensor unit vertically and horizontally until the red dot is centered on the receiver and both the receiver s LEDs turn off. See Table 3. It may be necessary to adjust the horizontal and vertical angles of the receiver's sensor unit as well. c. Repeat steps a and b for the receiver. d. Turn the lasers off, and then replace the covers. WARNING: Do not look directly at the lasers. 2. Eyeball adjustment (see fig.10): a. Remove the transmitter cover, and look into one of the alignment viewfinders (one of the four holes located between the two lenses) at a 45 angle. b. Adjust the horizontal angle of the lens vertically and horizontally until the receiver is clearly seen in the viewfinder. c. Repeat steps a and b for the receiver. Fig. 10: Horizontal and Vertical Sensor Adjustment Vertical Adjustment Horizontal Adjustment View Finders Table 3: LED Indicators Alarm (Red LED) Signal strength d. Replace the transmitter and receiver covers. NOTE - If you cannot see the opposite unit in the viewfinder, put a sheet of white paper near the unit to be seen, move your eyes about 2" (5cm) away from the viewfinder, and try again. Signal (Yellow LED) Single Multi Flash Best Good Fair Re-adjust Wiring the Wall Mount 1. Remove the cover. Remove the screw under the lens unit in order to detach the mounting plate. See fig. 4. 2. If the sensor wiring comes from inside the wall Break a hole in the mounting plate s rubber grommet, and pull the cable through the grommet s hole. Then run the cable through the hole near the top of the sensor unit so it comes out the front. Using two of the included mounting screws, attach the mounting plate to the wall. Then reattach the sensor unit to the mounting plate, connect the wires, and snap on the cover. See fig. 5. 4 3. If the sensor wiring is run along the surface of the wall There are two plastic knockouts on the back of the sensor unit, one on top and one on bottom. Break out the appropriate knockout, and pull the wiring through the knockout. Then run the wiring through the hole near the top of the sensor unit so it comes out the front. Using two of the included mounting screws, attach the mounting plate to the wall. Then reattach the sensor unit to the mounting plate, connect the wires, and snap on the cover. See fig. 6. Fine Tuning the 1. Once the sensor is mounted and aligned, the sensor can be fine tuned using the voltage output jack. a. Set the range of a volt-ohm meter (VOM) to 1~5VDC. b. Insert the red (+) probe into the (+) terminal Table 4: and the black (-) probe into the (-) terminal. Voltage output c. Measure the voltage (see table 4). Single d. Adjust the horizontal angle by hand until the >2.8V VOM indicates the highest voltage. 1.7~2.7V e. Adjust the vertical angle by turning the vertical 1.1~1.6V adjustment screw until the VOM indicates the <1.0V highest voltage. NOTE: Do not interrupt the beam while adjusting alignment. 9 Multi >2.8V 1.8~2.7V 1.1~1.7V <1.0V Alignment quality Best Good Fair Re-adjust

3. Two layer (double stacked) applications. Sensor #1 Sensor #2 Sensor #3 4. Perimeter security application. Sensor #4 Sensor #5 Sensor #6 Wiring the Pole Mount (NOTE Pole mounting bracket required.) 1. Remove the cover. Remove the screw under the lens unit in order to detach the mounting plate. See fig. 4. 2. Break a hole in the mounting plate s rubber grommet, and pull the cable through the grommet s hole. Then run the cable through the hole near the top of the sensor unit so it comes out the front. Use the included mounting bracket to mount to the pole. Then reattach the sensor unit to the mounting plate, connect the wires, and snap on the cover. See fig. 7. Wiring (fig. 8) 1. Screw the wires tightly to avoid slipping off the terminals, but not so tight that they break. 2. Screws on terminals which are not used should be tightened. 3. Grounding may be necessary, depending on the location. Fig. 4: Remove the cover Fig. 5: Wall Mount, Wire from Inside Wall Sensor #3 Sensor #2 Sensor #1 Sensor #4 5. Two layer (double stacked) perimeter security application. Fig. 6: Wall Mount, Wire Runs Along Wall Fig. 7: Pole Mount or Fig. 8: Wiring -30 AC/DC 6 7 N.C. 3 4 5 6 7-30 AC/DC COM. N.C. N.O. N.C. Power -30V DC/AC (60Hz), 100mA Tamper output N.C. switch 30V (AC/DC) 1A (Triggers if cover detached) Power -30V DC/AC (60Hz), 100mA Trigger output 30V (AC/DC) 1A Tamper output N.C. switch 30V (AC/DC) 1A (Triggers if cover detached) 8 5

Fig. 9: Examples of Possible Ways To Connect One or More Sensors Example connection 1 - Standard ➂➃ Control panel (VDC) }Trigger signal Selectable 4-channel beam (For E-964-D390GQ model only) The sensor beam can be set at different levels on-site to avoid interference from other twin photobeam sensors nearby. Useful during mutliple sensor applications as shown below. To select between four different beam frequencies, adjust the beam channel switch of the transmitter side and receiver side. See fig. 1 for switch location and table 2 for switch position. Important The transmitter and receiver sensor pair must be set with the same. Example connection 2 - Dual Sensors, Separate Channels ➂➃ ➂➃ Control panel (VDC) }Trigger (ch. 1) }Trigger (ch. 2) Table 2: Beam Frequency Selection Chart (For E-964-D390GQ model only) Frequency channel CH1 CH2 CH3 CH4 Switch position Multiple sensor sample applications ( For E-964-D390GQ model only) 1. Single pair multiple layer application. NO NO NO NO Example connection 3 - In-line Single Channel Control panel (VDC) }Trigger signal Sensor #1 Sensor #2 ➂➃ ➂➃ Sensor #3 Sensor #4 Example connection 4 - Two stacked }Trigger signal 2. Long distance series application. Sensor #1 Sensor #2 Sensor #3 Sensor #4 ➂➃ ➂➃ 6 7